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Rodriguez, Shelly; Morrison, Alex; Benfield, Patrick – Science and Children, 2019
This article describes a lesson rooted in "tinkering," an approach to learning that encourages the use of authentic, hands-on experience to develop an understanding of content and physical materials. There were several desired outcomes for this lesson. First, the authors felt that tinkering was an appropriate approach to investigating…
Descriptors: Grade 3, Elementary School Science, Science Instruction, Physics
Fast, Danene; Wild, Tiffany – Science and Children, 2018
For early elementary students with vision loss, these seemingly simple questions can pose great difficulty, especially when conceptual development is being established. Because students with vision loss are unable to observe non-verbal cues within environmental settings, supplemental learning techniques must be utilized for learning. In science,…
Descriptors: Visual Impairments, Science Instruction, Cues, Teaching Methods
Presser, Ashley Lewis; Dominguez, Ximena; Goldstein, Marion; Vidiksis, Regan; Kamdar, Danae – Science and Children, 2019
Investigating real-world phenomena in a playful, exploratory setting is a natural process for young children. Teachers can capitalize on children's curiosity to foster their understanding of science ideas and their engagement in science practices, such as predicting, experimenting, observing, comparing, and contrasting. Force and motion…
Descriptors: Preschool Children, Preschool Education, Motion, Scientific Concepts
Flannagan, Jenny Sue; Sawyer, Margaret – Science and Children, 2015
In this article the authors describe what they call their "Snapshots of Science" program. These mini-lessons of science are taught once a week to all students in the school library. Over the last two years, they have been working to extend the experiences students have in their science classroom into the library. Each week, students…
Descriptors: Science Instruction, Grade 4, Science Curriculum, School Libraries
Brown, Patrick – Science and Children, 2014
A rich science learning experience not only captures students' attention but also motivates them to investigate and solve problems and investigate how scientists carry out their work. This article describes how secondary science coordinator Patrick Brown's found success teaching students the nature of science by engaging them in…
Descriptors: Science Instruction, Scientific Principles, Hands on Science, Physics
Gilstrap, Tatiana; Sheldon, Peter; Schimmoeller, Peggy – Science and Children, 2010
If scientists know where earthquakes are most likely to occur, then architects and engineers can design safer buildings for such areas and potentially prevent some of the devastating aftereffects. Engineers have met this challenge through the design and use of gigantic shake tables to evaluate the stability of various structures. In this 45-minute…
Descriptors: Science Instruction, Natural Disasters, Building Design, Scientific Concepts
McCartney, Robin Ward; Deroche, Sarah; Pontiff, Danielle – Science and Children, 2008
Have you ever heard of a Maglev train? Who would be crazy enough to think that exploring how a high-tech train little known in the United States works with a group of fourth-grade students would yield understandings about the properties of magnetism, force and motion, and inquiry science? Fortunately, the authors--a college methods professor and…
Descriptors: Grade 4, Elementary School Science, Elementary School Students, Science Instruction
Beck, Charles – Science and Children, 2008
We all hope our classrooms don't take on a circus-like atmosphere, but juggling can be an engaging way to introduce elementary physics to students. The very act of tossing and catching objects can help students to understand the basic physical principles involved in rotating a set of objects. This article suggests a variety of simple hands-on…
Descriptors: Science Activities, Physics, Science Instruction, Scientific Concepts

Hall, Sue; Hall, Dori – Science and Children, 2002
Describes a science activity that promotes science process skills while investigating the properties of packing peanuts. (YDS)
Descriptors: Chemistry, Elementary Education, Hands on Science, Learning Disabilities

Ward, Charlotte – Science and Children, 1997
Shares some strategies for encouraging students to notice their environment in the broadest sense through using the Socratic method. Focuses on specific examples with historical significance such as exploring the period of a pendulum. (DDR)
Descriptors: Concept Formation, Elementary Education, Hands on Science, Inquiry

Calkins, Andrew – Science and Children, 1998
Announces the theme for National Science and Technology Week (NSTW) 1998 and offers a rationale for the choice of the topic of polar connections. Suggests that the poles offer a glimpse of science as high adventure. The poles are often seen as pristine, nearly lablike environments that provide a platform for animal studies. (DDR)
Descriptors: Biology, Elementary Secondary Education, General Science, Hands on Science

Science and Children, 1998
Details an activity in which children experiment with creating their own sun protection devices and a model of the sunglasses invented by native people of the Arctic. (DDR)
Descriptors: Cultural Influences, Design, Elementary Secondary Education, General Science

Leonard, Jacqueline – Science and Children, 2002
Introduces a weekend science program for early childhood and elementary school students. Uses kites to teach about lightening as a source of electricity and aerodynamics. Includes directions on how to make a kite. (YDS)
Descriptors: Early Childhood Education, Elementary Education, Hands on Science, Mathematics Education

Schaffer, Linda; Pinson, Harlow; Kokoski, Teresa – Science and Children, 1998
Contains information on rain sticks and other similar musical instruments. Describes procedures for making rain sticks and using them in the study of sound. Discusses the physics of sound and how to utilize computers to study sound with rain sticks. (DDR)
Descriptors: Acoustics, Computer Uses in Education, Elementary Secondary Education, General Science

Hoover, Barbara G. – Science and Children, 1998
Describes several science activities designed around the upcoming Winter Olympics ice skating events which demonstrate the scientific principles behind the sport. Students learn that increasing the pressure on ice will lead to the ice melting, the principle involved in the spinning swing, and the technology of skates and skating outfits. (PVD)
Descriptors: Athletic Equipment, Demonstrations (Science), Elementary Education, Hands on Science